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The pull-out behavior of straight and hooked-end steel fiber from hybrid fiber reinforced cementitious composite: Experimental study and analytical modelling

机译:混杂纤维增强水泥基复合材料对直端和弯头钢纤维的拉拔性能:实验研究和分析模型

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This paper deals with the interfacial bonding performance of the steel fiber in the steel-polypropylene hybrid fiber reinforced cementitious composite. 42 groups of straight and hooked-end steel fiber specimens are investigated by the single-sided pull-out tests. The whole pull-out load-slip responses are captured, and the effects of hybrid fiber dosage, matrix strength and fiber embedded length are analyzed. Furthermore, the interfacial bonding mechanism and fiber reinforcing mechanism are revealed based on SEM images. Results show that the addition of hybrid fibers in the matrix contributes significantly to increasing the maximum and residual pull-out load as well as improving the pull-out energy dissipation capacity. The polypropylene fiber content is found to be the dominant factor for the variation of interfacial properties. For straight steel fiber, the enhancing effect of hybrid fiber on the chemical adhesion force is more pronounced than that on the sliding frictional force. For hooked-end steel fiber, the contribution of hybrid fiber is not significant on the hook mechanical interlocking. Finally, a theoretical model is developed to predict the pull-out behavior with the hybrid fiber effect taken into account. The predictions provide satisfactory correlation to the experimental results from both the current study and previous work.
机译:本文探讨了钢-聚丙烯杂化纤维增强水泥基复合材料中钢纤维的界面粘结性能。通过单面拉拔试验研究了42组直端和弯头钢纤维样品。记录了整个拉出载荷-滑动响应,并分析了混合纤维用量,基体强度和纤维包埋长度的影响。此外,基于SEM图像揭示了界面结合机理和纤维增强机理。结果表明,在基体中添加杂化纤维显着有助于增加最大和剩余拉出载荷,并提高拉出能量消散能力。发现聚丙烯纤维含量是改变界面性能的主要因素。对于直钢纤维,杂化纤维对化学粘附力的增强作用比对滑动摩擦力的增强作用更为明显。对于钩端钢纤维,混合纤维对钩机械互锁的贡献不大。最后,建立了一个理论模型以考虑混合纤维效应来预测拔出行为。这些预测与当前研究和先前工作的实验结果提供了令人满意的相关性。

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